NRF2 Deficiency Attenuates Diabetic Kidney Disease in Db/Db Mice via Down-Regulation of Angiotensinogen, SGLT2, CD36, and FABP4 Expression and Lipid Accumulation in Renal Proximal Tubular Cells.
Ke SuShui-Ling ZhaoWen-Xia YangChao-Sheng LoIsabelle ChenierMin-Chun LiaoYu-Chao PangJun-Zheng PengKana N MiyataJean-Francois CailhierJean EthierJean-Baptiste LattoufJanos G FilepJulie R IngelfingerShao-Ling ZhangJohn S D ChanPublished in: Antioxidants (Basel, Switzerland) (2023)
The role(s) of nuclear factor erythroid 2-related factor 2 (NRF2) in diabetic kidney disease (DKD) is/are controversial. We hypothesized that Nrf2 deficiency in type 2 diabetes (T2D) db/db mice (db/db Nrf2 knockout (KO)) attenuates DKD progression through the down-regulation of angiotensinogen (AGT), sodium-glucose cotransporter-2 (SGLT2), scavenger receptor CD36, and fatty -acid-binding protein 4 (FABP4), and lipid accumulation in renal proximal tubular cells (RPTCs). Db/db Nrf2 KO mice were studied at 16 weeks of age. Human RPTCs (HK2) with NRF2 KO via CRISPR-Cas9 genome editing and kidneys from patients with or without T2D were examined. Compared with db/db mice, db/db Nrf2 KO mice had lower systolic blood pressure, fasting blood glucose, kidney hypertrophy, glomerular filtration rate, urinary albumin/creatinine ratio, tubular lipid droplet accumulation, and decreased expression of AGT, SGLT2, CD36, and FABP4 in RPTCs. Male and female mice had similar results. NRF2 KO attenuated the stimulatory effect of the Nrf2 activator, oltipraz, on AGT, SGLT2, and CD36 expression and high-glucose/free fatty acid (FFA)-stimulated lipid accumulation in HK2. Kidneys from T2D patients exhibited markedly higher levels of CD36 and FABP4 in RPTCs than kidneys from non-diabetic patients. These data suggest that NRF2 exacerbates DKD through the stimulation of AGT, SGLT2, CD36, and FABP4 expression and lipid accumulation in RPTCs of T2D.
Keyphrases
- binding protein
- oxidative stress
- crispr cas
- high glucose
- type diabetes
- genome editing
- blood glucose
- poor prognosis
- blood pressure
- high fat diet induced
- endothelial cells
- induced apoptosis
- fatty acid
- nuclear factor
- glycemic control
- toll like receptor
- heart failure
- machine learning
- cell cycle arrest
- immune response
- newly diagnosed
- metabolic syndrome
- end stage renal disease
- long non coding rna
- artificial intelligence
- big data
- atrial fibrillation
- adipose tissue
- inflammatory response
- left ventricular
- peritoneal dialysis
- gestational age
- patient reported
- pi k akt